Contrôle moteurEn neurosciences, le contrôle moteur est la capacité de faire des ajustements posturaux dynamiques et de diriger le corps et les membres dans le but de faire un mouvement déterminé. Le mouvement volontaire est initié par le cortex moteur primaire et le cortex prémoteur. Le signal est ensuite transmis aux circuits du tronc cérébral et de la moelle épinière qui activent les muscles squelettiques qui, en se contractant, produisent un mouvement. Le mouvement produit renvoie des informations proprioceptives au système nerveux central (SNC).
Bras manipulateurvignette|Bras manipulateur d'un robot industriel Kuka en 2003. Un bras manipulateur est le bras d'un robot généralement programmable, avec des fonctions similaires à un bras humain. Les liens de ce manipulateur sont reliés par des axes permettant, soit de mouvement de rotation (comme dans un robot articulé) et/ou de translation (linéaire) de déplacement. Dans le cas d'une imitation complète d'un bras humain, un bras manipulateur a donc de rotation et de translation sur son élément terminal.
Robot end effectorIn robotics, an end effector is the device at the end of a robotic arm, designed to interact with the environment. The exact nature of this device depends on the application of the robot. In the strict definition, which originates from serial robotic manipulators, the end effector means the last link (or end) of the robot. At this endpoint, the tools are attached. In a wider sense, an end effector can be seen as the part of a robot that interacts with the work environment.
Robotiquethumb|upright=1.5|Nao, un robot humanoïde. thumb|upright=1.5|Des robots industriels au travail dans une usine. La robotique est l'ensemble des techniques permettant la conception et la réalisation de machines automatiques ou de robots. L'ATILF donne la définition suivante du robot : « il effectue, grâce à un système de commande automatique à base de microprocesseur, une tâche précise pour laquelle il a été conçu dans le domaine industriel, scientifique, militaire ou domestique ».
Motor skillA motor skill is a function that involves specific movements of the body's muscles to perform a certain task. These tasks could include walking, running, or riding a bike. In order to perform this skill, the body's nervous system, muscles, and brain have to all work together. The goal of motor skill is to optimize the ability to perform the skill at the rate of success, precision, and to reduce the energy consumption required for performance. Performance is an act of executing a motor skill or task.
Robotic sensingRobotic sensing is a subarea of robotics science intended to provide sensing capabilities to robots. Robotic sensing provides robots with the ability to sense their environments and is typically used as feedback to enable robots to adjust their behavior based on sensed input. Robot sensing includes the ability to see, touch, hear and move and associated algorithms to process and make use of environmental feedback and sensory data.
Fine motor skillFine motor skill (or dexterity) is the coordination of small muscles in movement with the eyes, hands and fingers. The complex levels of manual dexterity that humans exhibit can be related to the nervous system. Fine motor skills aid in the growth of intelligence and develop continuously throughout the stages of human development. Motor skills are movements and actions of the bone structures. Typically, they are categorised into two groups: gross motor skills and fine motor skills.
Gross motor skillGross motor skills are the abilities usually acquired during childhood as part of a child's motor learning. By the time they reach two years of age, almost all children are able to stand up, walk and run, walk up stairs, etc. These skills are built upon, improved and better controlled throughout early childhood, and continue in refinement throughout most of the individual's years of development into adulthood. These gross movements come from large muscle groups and whole body movement.
Efferent nerve fiberEfferent nerve fibers refer to axonal projections that exit a particular region; as opposed to afferent projections that arrive at the region. These terms have a slightly different meaning in the context of the peripheral nervous system (PNS) and central nervous system (CNS). The efferent fiber is a long process projecting far from the neuron's body that carries nerve impulses away from the central nervous system toward the peripheral effector organs (mainly muscles and glands).
MotoneuroneLes motoneurones constituent la voie de sortie du système nerveux central ou la voie finale de tout acte moteur. Les corps cellulaires des motoneurones sont situés soit dans le tronc cérébral, soit dans la corne ventrale de la substance grise de la moelle épinière. Chaque motoneurone possède un axone qui part du système nerveux central pour innerver les fibres musculaires d'un muscle. L'ensemble constitué par un motoneurone et les fibres musculaires qu'il innerve constitue une unité motrice.